How to Plot Mfcc in Python Using Matplotlib? Last Updated : 28 Apr, 2025 Comments Improve Suggest changes Like Article Like Report Mel-frequency cepstral coefficients (MFCC) are widely used in audio signal processing and speech recognition tasks. They represent the spectral characteristics of an audio signal and are commonly used as features for various machine-learning applications. In this article, we will explore how to compute and visualize MFCC using Python and Matplotlib. Plot Mfcc in Python Using MatplotlibBelow is the step-by-step approach to plot Mfcc in Python using Matplotlib: Step 1: InstallationBefore starting, install the following libraries with the help of the following commands: pip install numpy librosa matplotlibStep 2: Getting StartedLet's start by importing the necessary libraries and loading an audio file. For this example, we'll use the librosa library to load an audio file. Python3 import librosa import librosa.display import matplotlib.pyplot as plt import numpy as np Step 3: Load an audio fileNow, we will load an audio file by using the following code. Python3 audio_file = 'myaudio.wav' y, sr = librosa.load(audio_file) Step 4: Compute MFCCNow, let's compute the MFCC of the audio signal using librosa's mfcc function: Python3 mfccs = librosa.feature.mfcc(y, sr=sr, n_mfcc=13) Step 5: Visualize MFCCTo visualize the MFCC, we can use Matplotlib to create a heatmap. Each row in the MFCC matrix represents a different coefficient, and each column represents a frame in the audio signal. Python3 plt.figure(figsize=(10, 5)) librosa.display.specshow(mfccs, x_axis='time') plt.colorbar() plt.title('MFCC') plt.xlabel('Time') plt.ylabel('MFCC Coefficients') plt.show() Step 6: CustomizationYou can customize the plot further by adding axis labels, title, and adjusting the color map. Additionally, you can choose the number of MFCC coefficients by modifying the n_mfcc parameter when computing the MFCC. Python3 plt.figure(figsize=(10, 5)) librosa.display.specshow(mfccs, x_axis='time', cmap='viridis', hop_length=512) plt.colorbar(format='%+2.0f dB') plt.title('MFCC') plt.xlabel('Time (s)') plt.ylabel('MFCC Coefficients') plt.show() Complete Code Python3 import librosa import librosa.display import matplotlib.pyplot as plt def plot_mfcc(audio_path): # Load the audio file y, sr = librosa.load(audio_path) # Extract MFCC features mfccs = librosa.feature.mfcc(y=y, sr=sr, n_mfcc=13) # Plot MFCCs plt.figure(figsize=(10, 4)) librosa.display.specshow(mfccs, x_axis='time', cmap='viridis') plt.colorbar(format='%+2.0f dB') plt.title('MFCC') plt.xlabel('Time') plt.ylabel('MFCC Coefficient') plt.show() # Example usage audio_file_path = "path/to/your/audio/file.wav" plot_mfcc(audio_file_path) Output: Comment More infoAdvertise with us Next Article How to Plot Mfcc in Python Using Matplotlib? 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